Human and Robot Exploration on Mars or Moon
This event took place on Tuesday 09 November 2004 at 14:15
Dr Maarten Sierhuis Human-Centered Computing, NASA Ames Research Center, Moffett Field, USA
With the recent exciting events of NASA?s Mars Exploration Rovers and President Bush?s announcement for NASA to return to the Moon as a stepping stone for going to Mars with humans and robots, the debate about why we should send humans to do the scientific exploration on extra-terrestrial planetary surfaces is again upfront and central. Can robots explore? Are the MER rovers really geologists on Mars, or is geology still performed by the scientists on Earth? What would it mean for humans to explore Mars? How would robots and humans work together? How will the astronaut geologist collaborate with his or her colleagues on Earth? These are but some of the questions that are now going to be seriously considered at NASA.
At NASA Ames, in particular in the Work Systems Design & Evaluation group, we have been asking these questions for more than five years. We have studied today?s geology scientists in the field in order to understand what they do and why they do things the way they do. We have studied them on Devon Island in the High Arctic, and in the dessert in Utah. We have also done detailed studies of the work processes for the Apollo missions, the only time humans were actually on an extra-terrestrial surface. Based on these ethnographic field studies, we are developing human-centered software systems that support the astronaut geologist in living and working on Mars, collaborating with remote scientists back on Earth and working together with robots in the field.
In this talk I will give an overview of some of the issues concerning human and robot exploration and will present our work on the Mobile Agents Project during this year?s (April-May 2004) two-week field test at the Mars Dessert Research Station, located in the Utah desert near Hanksville, Utah. For this year?s field test we collaborated with both researchers from KMi at the Open University and the ECS group at the University of Southampton.
PowerPoint Presentation (HMTL Exported Slides)
Screen movies of the UK/US Remote Science Team:
Related Links
Maarten Sierhuis
Crew 29 at the Mars Desert Research Stattion
Agent iSolutions
Computational Sciences Division, NASA Ames
This event took place on Tuesday 09 November 2004 at 14:15
With the recent exciting events of NASA?s Mars Exploration Rovers and President Bush?s announcement for NASA to return to the Moon as a stepping stone for going to Mars with humans and robots, the debate about why we should send humans to do the scientific exploration on extra-terrestrial planetary surfaces is again upfront and central. Can robots explore? Are the MER rovers really geologists on Mars, or is geology still performed by the scientists on Earth? What would it mean for humans to explore Mars? How would robots and humans work together? How will the astronaut geologist collaborate with his or her colleagues on Earth? These are but some of the questions that are now going to be seriously considered at NASA.
At NASA Ames, in particular in the Work Systems Design & Evaluation group, we have been asking these questions for more than five years. We have studied today?s geology scientists in the field in order to understand what they do and why they do things the way they do. We have studied them on Devon Island in the High Arctic, and in the dessert in Utah. We have also done detailed studies of the work processes for the Apollo missions, the only time humans were actually on an extra-terrestrial surface. Based on these ethnographic field studies, we are developing human-centered software systems that support the astronaut geologist in living and working on Mars, collaborating with remote scientists back on Earth and working together with robots in the field.
In this talk I will give an overview of some of the issues concerning human and robot exploration and will present our work on the Mobile Agents Project during this year?s (April-May 2004) two-week field test at the Mars Dessert Research Station, located in the Utah desert near Hanksville, Utah. For this year?s field test we collaborated with both researchers from KMi at the Open University and the ECS group at the University of Southampton.
PowerPoint Presentation (HMTL Exported Slides)
Screen movies of the UK/US Remote Science Team:
- How the RST Facilitator at the OU helped the RST by publishing a Portal Map with only the key information needed (26 mins):
Making_a_Compendium_RST_PortalMap.mov (29.3Mb) - Quick introduction to the tools that the RST is about to use in an online meeting (45 secs):
href="http://stadium.open.ac.uk/podium/documents/20041107_maarten_slides/Pre-RST-meeting-tool-check.mov" target="blank">Pre-RST-meeting-tool-check.mov (2.5Mb) - Navigating around the Meeting Replay tool (1min 49secs):
NASA-MeetingReplay.mov (3.6Mb)
Related Links
Maarten Sierhuis
Crew 29 at the Mars Desert Research Stattion
Agent iSolutions
Computational Sciences Division, NASA Ames
Future Internet
KnowledgeManagementMultimedia &
Information SystemsNarrative
HypermediaNew Media SystemsSemantic Web &
Knowledge ServicesSocial Software
Semantic Web and Knowledge Services is...

Our research in the Semantic Web area looks at the potentials of fusing together advances in a range of disciplines, and applying them in a systemic way to simplify the development of intelligent, knowledge-based web services and to facilitate human access and use of knowledge available on the web. For instance, we are exploring ways in which tnatural language interfaces can be used to facilitate access to data distributed over different repositories. We are also developing infrastructures to support rapid development and deployment of semantic web services, which can be used to create web applications on-the-fly. We are also investigating ways in which semantic technology can support learning on the web, through a combination of knowledge representation support, pedagogical theories and intelligent content aggregation mechanisms. Finally, we are also investigating the Semantic Web itself as a domain of analysis and performing large scale empirical studies to uncover data about the concrete epistemologies which can be found on the Semantic Web. This exciting new area of research gives us concrete insights on the different conceptualizations that are present on the Semantic Web by giving us the possibility to discover which are the most common viewpoints, which viewpoints are mutually inconsistent, to what extent different models agree or disagree, etc...
Our aim is to be at the forefront of both theoretical and practical developments on the Semantic Web not only by developing theories and models, but also by building concrete applications, for a variety of domains and user communities, including KMi and the Open University itself.
Check out these Hot Semantic Web and Knowledge Services Projects:
List all Semantic Web and Knowledge Services Projects
Check out these Hot Semantic Web and Knowledge Services Technologies:
List all Semantic Web and Knowledge Services Technologies
List all Semantic Web and Knowledge Services Projects
Check out these Hot Semantic Web and Knowledge Services Technologies:
List all Semantic Web and Knowledge Services Technologies



